Different volume fractions (0.5 vol. % to 4.5 vol. %) of CNTs were used to reinforce a binary Fe50Co soft magnetic alloy. The first method for dispersion was involved dry mixing and ball milling of the powder, while the second was included wet mixing in dimethylformamide under ultrasonic agitation, drying and then dry ball milling. The powders were consolidated using spark plasma sintering. Tensile test and SEM analyses were performed to characterize the mechanical properties and the fracture surface of the sintered materials. The best magnetic and mechanical properties were achieved using the first method. A maximum enhancement in tensile strength of around 20% was observed in the 0.5 vol. % CNT composite with improved elongation compared ...
Carbon nanotube-iron mullite nanocomposite powders were prepared by a direct method involing a reduc...
The unique mechanical, thermal, and electrical properties of carbon nanotubes (CNTs) make them an id...
Ball milling and spark plasma sintering were successfully used to produce carbon nanotube reinforced...
Different volume fractions (0.5 vol. % to 4.5 vol. %) of CNTs were used to reinforce a binary Fe50Co...
Carbon nanotubes (CNTs) reinforced FeCo alloys were produced by high energy ball-milling and spark p...
The effect of the addition of graphene nanoplatelets (GNP) and graphene nanoplatelet/carbon nanotube...
Fe–50Co matrix composites containing 1.5 and 3 vol% of electroless Ni–P plated carbon nanotubes (CNT...
Composite strengthening was attempted to improve the mechanical strength and toughness of the britt...
Equiatomic FeCo alloys were densified using spark plasma sintering (SPS). Using a constant 50 MPa pr...
AbstractNowadays metal matrix composites (MMCs) find application in various fields. Metals like Alum...
Composites of 316L steel and carbon nanotubes (CNTs) were produced by powder metallurgy using high e...
Nanocomposite Sm<SUB>2</SUB>Co<SUB>17</SUB>-5wt% FeCo magnets were synthesized by high energy ball m...
Nanocomposite Sm(2)Co(17)-5 wt% FeCo magnets were synthesized by high energy ball milling followed b...
Carbon nano-tube (CNT) reinforced metal matrix nano-composites have attracted a great deal of attent...
Carbon nanotubes (CNTs)-reinforced metal matrix composites are very attractive advanced nanocomposit...
Carbon nanotube-iron mullite nanocomposite powders were prepared by a direct method involing a reduc...
The unique mechanical, thermal, and electrical properties of carbon nanotubes (CNTs) make them an id...
Ball milling and spark plasma sintering were successfully used to produce carbon nanotube reinforced...
Different volume fractions (0.5 vol. % to 4.5 vol. %) of CNTs were used to reinforce a binary Fe50Co...
Carbon nanotubes (CNTs) reinforced FeCo alloys were produced by high energy ball-milling and spark p...
The effect of the addition of graphene nanoplatelets (GNP) and graphene nanoplatelet/carbon nanotube...
Fe–50Co matrix composites containing 1.5 and 3 vol% of electroless Ni–P plated carbon nanotubes (CNT...
Composite strengthening was attempted to improve the mechanical strength and toughness of the britt...
Equiatomic FeCo alloys were densified using spark plasma sintering (SPS). Using a constant 50 MPa pr...
AbstractNowadays metal matrix composites (MMCs) find application in various fields. Metals like Alum...
Composites of 316L steel and carbon nanotubes (CNTs) were produced by powder metallurgy using high e...
Nanocomposite Sm<SUB>2</SUB>Co<SUB>17</SUB>-5wt% FeCo magnets were synthesized by high energy ball m...
Nanocomposite Sm(2)Co(17)-5 wt% FeCo magnets were synthesized by high energy ball milling followed b...
Carbon nano-tube (CNT) reinforced metal matrix nano-composites have attracted a great deal of attent...
Carbon nanotubes (CNTs)-reinforced metal matrix composites are very attractive advanced nanocomposit...
Carbon nanotube-iron mullite nanocomposite powders were prepared by a direct method involing a reduc...
The unique mechanical, thermal, and electrical properties of carbon nanotubes (CNTs) make them an id...
Ball milling and spark plasma sintering were successfully used to produce carbon nanotube reinforced...